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candidate will focus on developing terahertz cavity-magnonics platforms based on low-damping antiferromagnetic oxides, with an emphasis on controlling and coupling antiferromagnetic spin excitations using
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storage systems under the guidance of a supervising scientist. The successful candidate will play a leading role in the synthesis, characterization, and performance evaluation of advanced layered oxide
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. The successful candidate will investigate synthesis, processing, and manufacturing strategies for advanced composite materials reinforced with 1D and 2D nanomaterials, including MXenes, carbides, nitrides, oxides
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materials from complex feedstocks to achieve the desired product quality and form. As a part of this team, you will : Apply electrochemical engineering principles to develop processes such as oxide reduction
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fabrication, including mask design, metal sputtering, laser or e-beam lithography, etching, and device integration Familiarity with thin-film materials (e.g., oxides, dielectrics, metals) and their integration
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, both focused on multimodal synchrotron characterization of defects and interfaces in oxides and 2D materials. These positions are part of a cross-facility initiative to build an “AlphaFold